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Label-free colorimetric logic gates based on free gold nanoparticles and the coordination strategy between cytosine and silver ions

机译:基于游离金纳米粒子的无标记比色逻辑门以及胞嘧啶和银离子之间的配位策略

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摘要

A colorimetric sensing strategy combined with logic gates was demonstrated by taking advantage of the dispersion and aggregation of gold nanoparticles (AuNPs) on a paper-based analytical platform. By employing cytosine-Ag+-cytosine (C-Ag+-C) coordination chemistry, label-free oligonucleotide sequences (S-1) could be attached to unmodified AuNPs, which on addition of S-2 (complementary to S-1) or silver ions (Ag+) immediately aggregated, giving rise to an OR function. Furthermore, the gate could be employed to analyze Ag+ rapidly. By taking advantage of the disparate adsorption properties of single-stranded or double-stranded DNA modified AuNPs, an INHIBIT logic gate was constructed with S-1 and Ag+ as inputs to the S-2-attached AuNP mixture. In addition, using the S-1/S-2-attached-AuNP mixture as a basic work unit and Ag+ and cysteine as two inputs, the IMPLICATION logic gate was also designed, which provided an approach for cysteine detection. The proposed logic gates with excellent selectivity toward Ag+ against other metal ions addressed concerns of low cost, simple fabrication, and easy operation, providing an attractive alternative to conventional methods, which usually involve sophisticated instruments, complicated processes, and long periods of time. More importantly, such methods exhibited high sensitivity in the detection of Ag+ in river water samples.
机译:通过在基于纸张的分析平台上利用金纳米颗粒(AuNPs)的分散和聚集,证明了结合逻辑门的比色传感策略。通过使用胞嘧啶-Ag +-胞嘧啶(C-Ag + -C)配位化学,可以将无标记的寡核苷酸序列(S-1)连接到未修饰的AuNP,在添加S-2(与S-1互补)或银后离子(Ag +)立即聚集,从而产生OR功能。此外,该门可用于快速分析Ag +。通过利用单链或双链DNA修饰的AuNP的不同吸附特性,构建了一个INHIBIT逻辑门,其中S-1和Ag +作为S-2连接的AuNP混合物的输入。此外,使用S-1 / S-2-attached-AuNP混合物作为基本工作单元,并以Ag +和半胱氨酸作为两个输入,还设计了IMPLICATION逻辑门,这为半胱氨酸的检测提供了一种方法。所提出的对Ag +对其他金属离子具有极好的选择性的逻辑门解决了低成本,简单制造和易于操作的问题,为常规方法提供了一种有吸引力的替代方法,该方法通常涉及复杂的仪器,复杂的过程和较长的时间。更重要的是,这些方法在检测河水样品中的Ag +方面显示出高灵敏度。

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